闪电对温度和气溶胶的反应

X. Qie, Y. Yair, Shaoxuan Di, Zifan Huang, Rubin Jiang
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引用次数: 0

摘要

雷电对公共安全具有深远的社会影响,通常会造成人员伤亡和基础设施的严重破坏。由于地基和机载探测技术的进步,近几十年来全球范围内对闪电进行了监测,将其作为气候变化的一个重要变量和恶劣天气的一个指标。本文以空间和地面闪电数据为基础,回顾了研究闪电变化及其对温度和气溶胶反应的最新进展。闪电对温度和气溶胶的响应在空间和时间上表现出很大的异质性,这与气象和环境条件有关。最新研究表明,在一些高海拔或高纬度地区,如青藏高原和北极地区,雷电现象显著增加,因为这些地区在最近几十年中经历了快速变暖,生态系统十分脆弱。在某些地区,甚至在全球范围内,气溶胶粒子在某些动力学和热力学条件下对雷电变化起着重要的调节作用。预计未来闪电活动将普遍增加,但也有极少数例外。具有一致的空间和时间探测效率的连续长期闪电观测对于跟踪未来几十年闪电对气候变化的反应仍然至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lightning response to temperature and aerosols
Lightning has profound social implications for public safety and usually causes casualties and significant damage to infrastructure. Due to the advancement of both ground-based and spaceborne detection technology, lightning has been monitored globally in recent decades as an essential vari¬able of climate change and an indicator of severe weather. This article reviews recent progress in the study of lightning variations and their response to temperature and aerosols, based on both spaceborne and ground-based lightning data. The responses of lightning to temperature and aerosol show large spatial and temporal heterogeneity, with relation to the meteorological and environmental conditions. The latest research show that lightning exhibited significant increase in some high altitude or high latitude regions, such as the Tibetan Plateau and Arctic regions, where undergone fast warming during the recent decades and the ecosystems there is fragile. Aerosol particles play an important role in modulating lightning variations under certain dynamical and thermodynamic conditions in some regions, even on a global scale. The projected lightning activity will generally increase in the future but may with very few exceptions. Continuous long-term lightning observations with consistent spatial and temporal detection efficiency remain crucial for tracking the response of lightning to climate change in the coming decades.
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